2 * V4L2 Driver for SuperH Mobile CEU interface
4 * Copyright (C) 2008 Magnus Damm
6 * Based on V4L2 Driver for PXA camera host - "pxa_camera.c",
8 * Copyright (C) 2006, Sascha Hauer, Pengutronix
9 * Copyright (C) 2008, Guennadi Liakhovetski <kernel@pengutronix.de>
11 * This program is free software; you can redistribute it and/or modify
12 * it under the terms of the GNU General Public License as published by
13 * the Free Software Foundation; either version 2 of the License, or
14 * (at your option) any later version.
17 #include <linux/init.h>
18 #include <linux/module.h>
20 #include <linux/completion.h>
21 #include <linux/delay.h>
22 #include <linux/dma-mapping.h>
23 #include <linux/errno.h>
25 #include <linux/interrupt.h>
26 #include <linux/kernel.h>
28 #include <linux/moduleparam.h>
29 #include <linux/time.h>
30 #include <linux/slab.h>
31 #include <linux/device.h>
32 #include <linux/platform_device.h>
33 #include <linux/videodev2.h>
34 #include <linux/pm_runtime.h>
35 #include <linux/sched.h>
37 #include <media/v4l2-common.h>
38 #include <media/v4l2-dev.h>
39 #include <media/soc_camera.h>
40 #include <media/sh_mobile_ceu.h>
41 #include <media/sh_mobile_csi2.h>
42 #include <media/videobuf2-dma-contig.h>
43 #include <media/v4l2-mediabus.h>
44 #include <media/soc_mediabus.h>
46 /* register offsets for sh7722 / sh7723 */
48 #define CAPSR 0x00 /* Capture start register */
49 #define CAPCR 0x04 /* Capture control register */
50 #define CAMCR 0x08 /* Capture interface control register */
51 #define CMCYR 0x0c /* Capture interface cycle register */
52 #define CAMOR 0x10 /* Capture interface offset register */
53 #define CAPWR 0x14 /* Capture interface width register */
54 #define CAIFR 0x18 /* Capture interface input format register */
55 #define CSTCR 0x20 /* Camera strobe control register (<= sh7722) */
56 #define CSECR 0x24 /* Camera strobe emission count register (<= sh7722) */
57 #define CRCNTR 0x28 /* CEU register control register */
58 #define CRCMPR 0x2c /* CEU register forcible control register */
59 #define CFLCR 0x30 /* Capture filter control register */
60 #define CFSZR 0x34 /* Capture filter size clip register */
61 #define CDWDR 0x38 /* Capture destination width register */
62 #define CDAYR 0x3c /* Capture data address Y register */
63 #define CDACR 0x40 /* Capture data address C register */
64 #define CDBYR 0x44 /* Capture data bottom-field address Y register */
65 #define CDBCR 0x48 /* Capture data bottom-field address C register */
66 #define CBDSR 0x4c /* Capture bundle destination size register */
67 #define CFWCR 0x5c /* Firewall operation control register */
68 #define CLFCR 0x60 /* Capture low-pass filter control register */
69 #define CDOCR 0x64 /* Capture data output control register */
70 #define CDDCR 0x68 /* Capture data complexity level register */
71 #define CDDAR 0x6c /* Capture data complexity level address register */
72 #define CEIER 0x70 /* Capture event interrupt enable register */
73 #define CETCR 0x74 /* Capture event flag clear register */
74 #define CSTSR 0x7c /* Capture status register */
75 #define CSRTR 0x80 /* Capture software reset register */
76 #define CDSSR 0x84 /* Capture data size register */
77 #define CDAYR2 0x90 /* Capture data address Y register 2 */
78 #define CDACR2 0x94 /* Capture data address C register 2 */
79 #define CDBYR2 0x98 /* Capture data bottom-field address Y register 2 */
80 #define CDBCR2 0x9c /* Capture data bottom-field address C register 2 */
84 #define dev_geo dev_info
86 #define dev_geo dev_dbg
89 /* per video frame buffer */
90 struct sh_mobile_ceu_buffer
{
91 struct vb2_buffer vb
; /* v4l buffer must be first */
92 struct list_head queue
;
95 struct sh_mobile_ceu_dev
{
96 struct soc_camera_host ici
;
97 struct soc_camera_device
*icd
;
98 struct platform_device
*csi2_pdev
;
105 spinlock_t lock
; /* Protects video buffer lists */
106 struct list_head capture
;
107 struct vb2_buffer
*active
;
108 struct vb2_alloc_ctx
*alloc_ctx
;
110 struct sh_mobile_ceu_info
*pdata
;
111 struct completion complete
;
115 enum v4l2_field field
;
118 unsigned int image_mode
:1;
119 unsigned int is_16bit
:1;
120 unsigned int frozen
:1;
123 struct sh_mobile_ceu_cam
{
124 /* CEU offsets within the camera output, before the CEU scaler */
125 unsigned int ceu_left
;
126 unsigned int ceu_top
;
127 /* Client output, as seen by the CEU */
131 * User window from S_CROP / G_CROP, produced by client cropping and
132 * scaling, CEU scaling and CEU cropping, mapped back onto the client
135 struct v4l2_rect subrect
;
136 /* Camera cropping rectangle */
137 struct v4l2_rect rect
;
138 const struct soc_mbus_pixelfmt
*extra_fmt
;
139 enum v4l2_mbus_pixelcode code
;
142 static struct sh_mobile_ceu_buffer
*to_ceu_vb(struct vb2_buffer
*vb
)
144 return container_of(vb
, struct sh_mobile_ceu_buffer
, vb
);
147 static void ceu_write(struct sh_mobile_ceu_dev
*priv
,
148 unsigned long reg_offs
, u32 data
)
150 iowrite32(data
, priv
->base
+ reg_offs
);
153 static u32
ceu_read(struct sh_mobile_ceu_dev
*priv
, unsigned long reg_offs
)
155 return ioread32(priv
->base
+ reg_offs
);
158 static int sh_mobile_ceu_soft_reset(struct sh_mobile_ceu_dev
*pcdev
)
161 struct soc_camera_device
*icd
= pcdev
->icd
;
163 ceu_write(pcdev
, CAPSR
, 1 << 16); /* reset */
165 /* wait CSTSR.CPTON bit */
166 for (i
= 0; i
< 1000; i
++) {
167 if (!(ceu_read(pcdev
, CSTSR
) & 1)) {
174 /* wait CAPSR.CPKIL bit */
175 for (i
= 0; i
< 1000; i
++) {
176 if (!(ceu_read(pcdev
, CAPSR
) & (1 << 16))) {
185 dev_warn(icd
->pdev
, "soft reset time out\n");
193 * Videobuf operations
197 * .queue_setup() is called to check, whether the driver can accept the
198 * requested number of buffers and to fill in plane sizes
199 * for the current frame format if required
201 static int sh_mobile_ceu_videobuf_setup(struct vb2_queue
*vq
,
202 const struct v4l2_format
*fmt
,
203 unsigned int *count
, unsigned int *num_planes
,
204 unsigned int sizes
[], void *alloc_ctxs
[])
206 struct soc_camera_device
*icd
= container_of(vq
, struct soc_camera_device
, vb2_vidq
);
207 struct soc_camera_host
*ici
= to_soc_camera_host(icd
->parent
);
208 struct sh_mobile_ceu_dev
*pcdev
= ici
->priv
;
213 const struct soc_camera_format_xlate
*xlate
= soc_camera_xlate_by_fourcc(icd
,
214 fmt
->fmt
.pix
.pixelformat
);
217 bytes_per_line
= soc_mbus_bytes_per_line(fmt
->fmt
.pix
.width
,
219 height
= fmt
->fmt
.pix
.height
;
221 /* Called from VIDIOC_REQBUFS or in compatibility mode */
222 bytes_per_line
= soc_mbus_bytes_per_line(icd
->user_width
,
223 icd
->current_fmt
->host_fmt
);
224 height
= icd
->user_height
;
226 if (bytes_per_line
< 0)
227 return bytes_per_line
;
229 sizes
[0] = bytes_per_line
* height
;
231 alloc_ctxs
[0] = pcdev
->alloc_ctx
;
233 if (!vq
->num_buffers
)
239 /* If *num_planes != 0, we have already verified *count. */
240 if (pcdev
->video_limit
&& !*num_planes
) {
241 size_t size
= PAGE_ALIGN(sizes
[0]) * *count
;
243 if (size
+ pcdev
->buf_total
> pcdev
->video_limit
)
244 *count
= (pcdev
->video_limit
- pcdev
->buf_total
) /
245 PAGE_ALIGN(sizes
[0]);
250 dev_dbg(icd
->parent
, "count=%d, size=%u\n", *count
, sizes
[0]);
255 #define CEU_CETCR_MAGIC 0x0317f313 /* acknowledge magical interrupt sources */
256 #define CEU_CETCR_IGRW (1 << 4) /* prohibited register access interrupt bit */
257 #define CEU_CEIER_CPEIE (1 << 0) /* one-frame capture end interrupt */
258 #define CEU_CEIER_VBP (1 << 20) /* vbp error */
259 #define CEU_CAPCR_CTNCP (1 << 16) /* continuous capture mode (if set) */
260 #define CEU_CEIER_MASK (CEU_CEIER_CPEIE | CEU_CEIER_VBP)
264 * return value doesn't reflex the success/failure to queue the new buffer,
265 * but rather the status of the previous buffer.
267 static int sh_mobile_ceu_capture(struct sh_mobile_ceu_dev
*pcdev
)
269 struct soc_camera_device
*icd
= pcdev
->icd
;
270 dma_addr_t phys_addr_top
, phys_addr_bottom
;
271 unsigned long top1
, top2
;
272 unsigned long bottom1
, bottom2
;
278 * The hardware is _very_ picky about this sequence. Especially
279 * the CEU_CETCR_MAGIC value. It seems like we need to acknowledge
280 * several not-so-well documented interrupt sources in CETCR.
282 ceu_write(pcdev
, CEIER
, ceu_read(pcdev
, CEIER
) & ~CEU_CEIER_MASK
);
283 status
= ceu_read(pcdev
, CETCR
);
284 ceu_write(pcdev
, CETCR
, ~status
& CEU_CETCR_MAGIC
);
286 ceu_write(pcdev
, CEIER
, ceu_read(pcdev
, CEIER
) | CEU_CEIER_MASK
);
287 ceu_write(pcdev
, CAPCR
, ceu_read(pcdev
, CAPCR
) & ~CEU_CAPCR_CTNCP
);
288 ceu_write(pcdev
, CETCR
, CEU_CETCR_MAGIC
^ CEU_CETCR_IGRW
);
291 * When a VBP interrupt occurs, a capture end interrupt does not occur
292 * and the image of that frame is not captured correctly. So, soft reset
295 if (status
& CEU_CEIER_VBP
) {
296 sh_mobile_ceu_soft_reset(pcdev
);
301 complete(&pcdev
->complete
);
308 if (V4L2_FIELD_INTERLACED_BT
== pcdev
->field
) {
320 phys_addr_top
= vb2_dma_contig_plane_dma_addr(pcdev
->active
, 0);
322 switch (icd
->current_fmt
->host_fmt
->fourcc
) {
323 case V4L2_PIX_FMT_NV12
:
324 case V4L2_PIX_FMT_NV21
:
325 case V4L2_PIX_FMT_NV16
:
326 case V4L2_PIX_FMT_NV61
:
333 ceu_write(pcdev
, top1
, phys_addr_top
);
334 if (V4L2_FIELD_NONE
!= pcdev
->field
) {
336 phys_addr_bottom
= phys_addr_top
+ icd
->user_width
;
338 phys_addr_bottom
= phys_addr_top
+
339 soc_mbus_bytes_per_line(icd
->user_width
,
340 icd
->current_fmt
->host_fmt
);
341 ceu_write(pcdev
, bottom1
, phys_addr_bottom
);
345 phys_addr_top
+= icd
->user_width
*
347 ceu_write(pcdev
, top2
, phys_addr_top
);
348 if (V4L2_FIELD_NONE
!= pcdev
->field
) {
349 phys_addr_bottom
= phys_addr_top
+ icd
->user_width
;
350 ceu_write(pcdev
, bottom2
, phys_addr_bottom
);
354 ceu_write(pcdev
, CAPSR
, 0x1); /* start capture */
359 static int sh_mobile_ceu_videobuf_prepare(struct vb2_buffer
*vb
)
361 struct sh_mobile_ceu_buffer
*buf
= to_ceu_vb(vb
);
363 /* Added list head initialization on alloc */
364 WARN(!list_empty(&buf
->queue
), "Buffer %p on queue!\n", vb
);
369 static void sh_mobile_ceu_videobuf_queue(struct vb2_buffer
*vb
)
371 struct soc_camera_device
*icd
= container_of(vb
->vb2_queue
, struct soc_camera_device
, vb2_vidq
);
372 struct soc_camera_host
*ici
= to_soc_camera_host(icd
->parent
);
373 struct sh_mobile_ceu_dev
*pcdev
= ici
->priv
;
374 struct sh_mobile_ceu_buffer
*buf
= to_ceu_vb(vb
);
376 int bytes_per_line
= soc_mbus_bytes_per_line(icd
->user_width
,
377 icd
->current_fmt
->host_fmt
);
379 if (bytes_per_line
< 0)
382 size
= icd
->user_height
* bytes_per_line
;
384 if (vb2_plane_size(vb
, 0) < size
) {
385 dev_err(icd
->parent
, "Buffer #%d too small (%lu < %lu)\n",
386 vb
->v4l2_buf
.index
, vb2_plane_size(vb
, 0), size
);
390 vb2_set_plane_payload(vb
, 0, size
);
392 dev_dbg(icd
->parent
, "%s (vb=0x%p) 0x%p %lu\n", __func__
,
393 vb
, vb2_plane_vaddr(vb
, 0), vb2_get_plane_payload(vb
, 0));
397 * This can be useful if you want to see if we actually fill
398 * the buffer with something
400 if (vb2_plane_vaddr(vb
, 0))
401 memset(vb2_plane_vaddr(vb
, 0), 0xaa, vb2_get_plane_payload(vb
, 0));
404 spin_lock_irq(&pcdev
->lock
);
405 list_add_tail(&buf
->queue
, &pcdev
->capture
);
407 if (!pcdev
->active
) {
409 * Because there were no active buffer at this moment,
410 * we are not interested in the return value of
411 * sh_mobile_ceu_capture here.
414 sh_mobile_ceu_capture(pcdev
);
416 spin_unlock_irq(&pcdev
->lock
);
421 vb2_buffer_done(vb
, VB2_BUF_STATE_ERROR
);
424 static void sh_mobile_ceu_videobuf_release(struct vb2_buffer
*vb
)
426 struct soc_camera_device
*icd
= container_of(vb
->vb2_queue
, struct soc_camera_device
, vb2_vidq
);
427 struct soc_camera_host
*ici
= to_soc_camera_host(icd
->parent
);
428 struct sh_mobile_ceu_buffer
*buf
= to_ceu_vb(vb
);
429 struct sh_mobile_ceu_dev
*pcdev
= ici
->priv
;
431 spin_lock_irq(&pcdev
->lock
);
433 if (pcdev
->active
== vb
) {
434 /* disable capture (release DMA buffer), reset */
435 ceu_write(pcdev
, CAPSR
, 1 << 16);
436 pcdev
->active
= NULL
;
440 * Doesn't hurt also if the list is empty, but it hurts, if queuing the
441 * buffer failed, and .buf_init() hasn't been called
444 list_del_init(&buf
->queue
);
446 pcdev
->buf_total
-= PAGE_ALIGN(vb2_plane_size(vb
, 0));
447 dev_dbg(icd
->parent
, "%s() %zu bytes buffers\n", __func__
,
450 spin_unlock_irq(&pcdev
->lock
);
453 static int sh_mobile_ceu_videobuf_init(struct vb2_buffer
*vb
)
455 struct soc_camera_device
*icd
= container_of(vb
->vb2_queue
, struct soc_camera_device
, vb2_vidq
);
456 struct soc_camera_host
*ici
= to_soc_camera_host(icd
->parent
);
457 struct sh_mobile_ceu_dev
*pcdev
= ici
->priv
;
459 pcdev
->buf_total
+= PAGE_ALIGN(vb2_plane_size(vb
, 0));
460 dev_dbg(icd
->parent
, "%s() %zu bytes buffers\n", __func__
,
463 /* This is for locking debugging only */
464 INIT_LIST_HEAD(&to_ceu_vb(vb
)->queue
);
468 static int sh_mobile_ceu_stop_streaming(struct vb2_queue
*q
)
470 struct soc_camera_device
*icd
= container_of(q
, struct soc_camera_device
, vb2_vidq
);
471 struct soc_camera_host
*ici
= to_soc_camera_host(icd
->parent
);
472 struct sh_mobile_ceu_dev
*pcdev
= ici
->priv
;
473 struct list_head
*buf_head
, *tmp
;
475 spin_lock_irq(&pcdev
->lock
);
477 pcdev
->active
= NULL
;
479 list_for_each_safe(buf_head
, tmp
, &pcdev
->capture
)
480 list_del_init(buf_head
);
482 spin_unlock_irq(&pcdev
->lock
);
484 return sh_mobile_ceu_soft_reset(pcdev
);
487 static struct vb2_ops sh_mobile_ceu_videobuf_ops
= {
488 .queue_setup
= sh_mobile_ceu_videobuf_setup
,
489 .buf_prepare
= sh_mobile_ceu_videobuf_prepare
,
490 .buf_queue
= sh_mobile_ceu_videobuf_queue
,
491 .buf_cleanup
= sh_mobile_ceu_videobuf_release
,
492 .buf_init
= sh_mobile_ceu_videobuf_init
,
493 .wait_prepare
= soc_camera_unlock
,
494 .wait_finish
= soc_camera_lock
,
495 .stop_streaming
= sh_mobile_ceu_stop_streaming
,
498 static irqreturn_t
sh_mobile_ceu_irq(int irq
, void *data
)
500 struct sh_mobile_ceu_dev
*pcdev
= data
;
501 struct vb2_buffer
*vb
;
504 spin_lock(&pcdev
->lock
);
508 /* Stale interrupt from a released buffer */
511 list_del_init(&to_ceu_vb(vb
)->queue
);
513 if (!list_empty(&pcdev
->capture
))
514 pcdev
->active
= &list_entry(pcdev
->capture
.next
,
515 struct sh_mobile_ceu_buffer
, queue
)->vb
;
517 pcdev
->active
= NULL
;
519 ret
= sh_mobile_ceu_capture(pcdev
);
520 do_gettimeofday(&vb
->v4l2_buf
.timestamp
);
522 vb
->v4l2_buf
.field
= pcdev
->field
;
523 vb
->v4l2_buf
.sequence
= pcdev
->sequence
++;
525 vb2_buffer_done(vb
, ret
< 0 ? VB2_BUF_STATE_ERROR
: VB2_BUF_STATE_DONE
);
528 spin_unlock(&pcdev
->lock
);
533 static struct v4l2_subdev
*find_csi2(struct sh_mobile_ceu_dev
*pcdev
)
535 struct v4l2_subdev
*sd
;
537 if (!pcdev
->csi2_pdev
)
540 v4l2_device_for_each_subdev(sd
, &pcdev
->ici
.v4l2_dev
)
541 if (&pcdev
->csi2_pdev
->dev
== v4l2_get_subdevdata(sd
))
547 /* Called with .video_lock held */
548 static int sh_mobile_ceu_add_device(struct soc_camera_device
*icd
)
550 struct soc_camera_host
*ici
= to_soc_camera_host(icd
->parent
);
551 struct sh_mobile_ceu_dev
*pcdev
= ici
->priv
;
552 struct v4l2_subdev
*csi2_sd
;
558 dev_info(icd
->parent
,
559 "SuperH Mobile CEU driver attached to camera %d\n",
562 pm_runtime_get_sync(ici
->v4l2_dev
.dev
);
564 pcdev
->buf_total
= 0;
566 ret
= sh_mobile_ceu_soft_reset(pcdev
);
568 csi2_sd
= find_csi2(pcdev
);
570 csi2_sd
->grp_id
= soc_camera_grp_id(icd
);
571 v4l2_set_subdev_hostdata(csi2_sd
, icd
);
574 ret
= v4l2_subdev_call(csi2_sd
, core
, s_power
, 1);
575 if (ret
< 0 && ret
!= -ENOIOCTLCMD
&& ret
!= -ENODEV
) {
576 pm_runtime_put_sync(ici
->v4l2_dev
.dev
);
581 * -ENODEV is special: either csi2_sd == NULL or the CSI-2 driver
582 * has not found this soc-camera device among its clients
584 if (ret
== -ENODEV
&& csi2_sd
)
591 /* Called with .video_lock held */
592 static void sh_mobile_ceu_remove_device(struct soc_camera_device
*icd
)
594 struct soc_camera_host
*ici
= to_soc_camera_host(icd
->parent
);
595 struct sh_mobile_ceu_dev
*pcdev
= ici
->priv
;
596 struct v4l2_subdev
*csi2_sd
= find_csi2(pcdev
);
598 BUG_ON(icd
!= pcdev
->icd
);
600 v4l2_subdev_call(csi2_sd
, core
, s_power
, 0);
603 /* disable capture, disable interrupts */
604 ceu_write(pcdev
, CEIER
, 0);
605 sh_mobile_ceu_soft_reset(pcdev
);
607 /* make sure active buffer is canceled */
608 spin_lock_irq(&pcdev
->lock
);
610 list_del_init(&to_ceu_vb(pcdev
->active
)->queue
);
611 vb2_buffer_done(pcdev
->active
, VB2_BUF_STATE_ERROR
);
612 pcdev
->active
= NULL
;
614 spin_unlock_irq(&pcdev
->lock
);
616 pm_runtime_put_sync(ici
->v4l2_dev
.dev
);
618 dev_info(icd
->parent
,
619 "SuperH Mobile CEU driver detached from camera %d\n",
626 * See chapter 29.4.12 "Capture Filter Control Register (CFLCR)"
627 * in SH7722 Hardware Manual
629 static unsigned int size_dst(unsigned int src
, unsigned int scale
)
631 unsigned int mant_pre
= scale
>> 12;
634 return ((mant_pre
+ 2 * (src
- 1)) / (2 * mant_pre
) - 1) *
635 mant_pre
* 4096 / scale
+ 1;
638 static u16
calc_scale(unsigned int src
, unsigned int *dst
)
645 scale
= (src
* 4096 / *dst
) & ~7;
647 while (scale
> 4096 && size_dst(src
, scale
) < *dst
)
650 *dst
= size_dst(src
, scale
);
655 /* rect is guaranteed to not exceed the scaled camera rectangle */
656 static void sh_mobile_ceu_set_rect(struct soc_camera_device
*icd
)
658 struct soc_camera_host
*ici
= to_soc_camera_host(icd
->parent
);
659 struct sh_mobile_ceu_cam
*cam
= icd
->host_priv
;
660 struct sh_mobile_ceu_dev
*pcdev
= ici
->priv
;
661 unsigned int height
, width
, cdwdr_width
, in_width
, in_height
;
662 unsigned int left_offset
, top_offset
;
665 dev_geo(icd
->parent
, "Crop %ux%u@%u:%u\n",
666 icd
->user_width
, icd
->user_height
, cam
->ceu_left
, cam
->ceu_top
);
668 left_offset
= cam
->ceu_left
;
669 top_offset
= cam
->ceu_top
;
671 WARN_ON(icd
->user_width
& 3 || icd
->user_height
& 3);
673 width
= icd
->user_width
;
675 if (pcdev
->image_mode
) {
676 in_width
= cam
->width
;
677 if (!pcdev
->is_16bit
) {
683 int bytes_per_line
= soc_mbus_bytes_per_line(width
,
684 icd
->current_fmt
->host_fmt
);
685 unsigned int w_factor
;
687 switch (icd
->current_fmt
->host_fmt
->packing
) {
688 case SOC_MBUS_PACKING_2X8_PADHI
:
695 in_width
= cam
->width
* w_factor
;
696 left_offset
*= w_factor
;
698 if (bytes_per_line
< 0)
701 cdwdr_width
= bytes_per_line
;
704 height
= icd
->user_height
;
705 in_height
= cam
->height
;
706 if (V4L2_FIELD_NONE
!= pcdev
->field
) {
707 height
= (height
/ 2) & ~3;
713 /* CSI2 special configuration */
714 if (pcdev
->pdata
->csi2
) {
715 in_width
= ((in_width
- 2) * 2);
719 /* Set CAMOR, CAPWR, CFSZR, take care of CDWDR */
720 camor
= left_offset
| (top_offset
<< 16);
723 "CAMOR 0x%x, CAPWR 0x%x, CFSZR 0x%x, CDWDR 0x%x\n", camor
,
724 (in_height
<< 16) | in_width
, (height
<< 16) | width
,
727 ceu_write(pcdev
, CAMOR
, camor
);
728 ceu_write(pcdev
, CAPWR
, (in_height
<< 16) | in_width
);
729 /* CFSZR clipping is applied _after_ the scaling filter (CFLCR) */
730 ceu_write(pcdev
, CFSZR
, (height
<< 16) | width
);
731 ceu_write(pcdev
, CDWDR
, cdwdr_width
);
734 static u32
capture_save_reset(struct sh_mobile_ceu_dev
*pcdev
)
736 u32 capsr
= ceu_read(pcdev
, CAPSR
);
737 ceu_write(pcdev
, CAPSR
, 1 << 16); /* reset, stop capture */
741 static void capture_restore(struct sh_mobile_ceu_dev
*pcdev
, u32 capsr
)
743 unsigned long timeout
= jiffies
+ 10 * HZ
;
746 * Wait until the end of the current frame. It can take a long time,
747 * but if it has been aborted by a CAPSR reset, it shoule exit sooner.
749 while ((ceu_read(pcdev
, CSTSR
) & 1) && time_before(jiffies
, timeout
))
752 if (time_after(jiffies
, timeout
)) {
753 dev_err(pcdev
->ici
.v4l2_dev
.dev
,
754 "Timeout waiting for frame end! Interface problem?\n");
758 /* Wait until reset clears, this shall not hang... */
759 while (ceu_read(pcdev
, CAPSR
) & (1 << 16))
762 /* Anything to restore? */
763 if (capsr
& ~(1 << 16))
764 ceu_write(pcdev
, CAPSR
, capsr
);
767 /* Find the bus subdevice driver, e.g., CSI2 */
768 static struct v4l2_subdev
*find_bus_subdev(struct sh_mobile_ceu_dev
*pcdev
,
769 struct soc_camera_device
*icd
)
771 if (pcdev
->csi2_pdev
) {
772 struct v4l2_subdev
*csi2_sd
= find_csi2(pcdev
);
773 if (csi2_sd
&& csi2_sd
->grp_id
== soc_camera_grp_id(icd
))
777 return soc_camera_to_subdev(icd
);
780 #define CEU_BUS_FLAGS (V4L2_MBUS_MASTER | \
781 V4L2_MBUS_PCLK_SAMPLE_RISING | \
782 V4L2_MBUS_HSYNC_ACTIVE_HIGH | \
783 V4L2_MBUS_HSYNC_ACTIVE_LOW | \
784 V4L2_MBUS_VSYNC_ACTIVE_HIGH | \
785 V4L2_MBUS_VSYNC_ACTIVE_LOW | \
786 V4L2_MBUS_DATA_ACTIVE_HIGH)
788 /* Capture is not running, no interrupts, no locking needed */
789 static int sh_mobile_ceu_set_bus_param(struct soc_camera_device
*icd
)
791 struct soc_camera_host
*ici
= to_soc_camera_host(icd
->parent
);
792 struct sh_mobile_ceu_dev
*pcdev
= ici
->priv
;
793 struct v4l2_subdev
*sd
= find_bus_subdev(pcdev
, icd
);
794 struct sh_mobile_ceu_cam
*cam
= icd
->host_priv
;
795 struct v4l2_mbus_config cfg
= {.type
= V4L2_MBUS_PARALLEL
,};
796 unsigned long value
, common_flags
= CEU_BUS_FLAGS
;
797 u32 capsr
= capture_save_reset(pcdev
);
798 unsigned int yuv_lineskip
;
802 * If the client doesn't implement g_mbus_config, we just use our
805 ret
= v4l2_subdev_call(sd
, video
, g_mbus_config
, &cfg
);
807 common_flags
= soc_mbus_config_compatible(&cfg
,
811 } else if (ret
!= -ENOIOCTLCMD
) {
815 /* Make choises, based on platform preferences */
816 if ((common_flags
& V4L2_MBUS_HSYNC_ACTIVE_HIGH
) &&
817 (common_flags
& V4L2_MBUS_HSYNC_ACTIVE_LOW
)) {
818 if (pcdev
->pdata
->flags
& SH_CEU_FLAG_HSYNC_LOW
)
819 common_flags
&= ~V4L2_MBUS_HSYNC_ACTIVE_HIGH
;
821 common_flags
&= ~V4L2_MBUS_HSYNC_ACTIVE_LOW
;
824 if ((common_flags
& V4L2_MBUS_VSYNC_ACTIVE_HIGH
) &&
825 (common_flags
& V4L2_MBUS_VSYNC_ACTIVE_LOW
)) {
826 if (pcdev
->pdata
->flags
& SH_CEU_FLAG_VSYNC_LOW
)
827 common_flags
&= ~V4L2_MBUS_VSYNC_ACTIVE_HIGH
;
829 common_flags
&= ~V4L2_MBUS_VSYNC_ACTIVE_LOW
;
832 cfg
.flags
= common_flags
;
833 ret
= v4l2_subdev_call(sd
, video
, s_mbus_config
, &cfg
);
834 if (ret
< 0 && ret
!= -ENOIOCTLCMD
)
837 if (icd
->current_fmt
->host_fmt
->bits_per_sample
> 8)
842 ceu_write(pcdev
, CRCNTR
, 0);
843 ceu_write(pcdev
, CRCMPR
, 0);
845 value
= 0x00000010; /* data fetch by default */
848 switch (icd
->current_fmt
->host_fmt
->fourcc
) {
849 case V4L2_PIX_FMT_NV12
:
850 case V4L2_PIX_FMT_NV21
:
851 /* convert 4:2:2 -> 4:2:0 */
852 yuv_lineskip
= 0; /* skip for NV12/21, no skip for NV16/61 */
854 case V4L2_PIX_FMT_NV16
:
855 case V4L2_PIX_FMT_NV61
:
857 case V4L2_MBUS_FMT_UYVY8_2X8
:
858 value
= 0x00000000; /* Cb0, Y0, Cr0, Y1 */
860 case V4L2_MBUS_FMT_VYUY8_2X8
:
861 value
= 0x00000100; /* Cr0, Y0, Cb0, Y1 */
863 case V4L2_MBUS_FMT_YUYV8_2X8
:
864 value
= 0x00000200; /* Y0, Cb0, Y1, Cr0 */
866 case V4L2_MBUS_FMT_YVYU8_2X8
:
867 value
= 0x00000300; /* Y0, Cr0, Y1, Cb0 */
874 if (icd
->current_fmt
->host_fmt
->fourcc
== V4L2_PIX_FMT_NV21
||
875 icd
->current_fmt
->host_fmt
->fourcc
== V4L2_PIX_FMT_NV61
)
876 value
^= 0x00000100; /* swap U, V to change from NV1x->NVx1 */
878 value
|= common_flags
& V4L2_MBUS_VSYNC_ACTIVE_LOW
? 1 << 1 : 0;
879 value
|= common_flags
& V4L2_MBUS_HSYNC_ACTIVE_LOW
? 1 << 0 : 0;
880 value
|= pcdev
->is_16bit
? 1 << 12 : 0;
883 if (pcdev
->pdata
->csi2
)
886 ceu_write(pcdev
, CAMCR
, value
);
888 ceu_write(pcdev
, CAPCR
, 0x00300000);
890 switch (pcdev
->field
) {
891 case V4L2_FIELD_INTERLACED_TB
:
894 case V4L2_FIELD_INTERLACED_BT
:
901 ceu_write(pcdev
, CAIFR
, value
);
903 sh_mobile_ceu_set_rect(icd
);
906 dev_geo(icd
->parent
, "CFLCR 0x%x\n", pcdev
->cflcr
);
907 ceu_write(pcdev
, CFLCR
, pcdev
->cflcr
);
910 * A few words about byte order (observed in Big Endian mode)
912 * In data fetch mode bytes are received in chunks of 8 bytes.
913 * D0, D1, D2, D3, D4, D5, D6, D7 (D0 received first)
915 * The data is however by default written to memory in reverse order:
916 * D7, D6, D5, D4, D3, D2, D1, D0 (D7 written to lowest byte)
918 * The lowest three bits of CDOCR allows us to do swapping,
919 * using 7 we swap the data bytes to match the incoming order:
920 * D0, D1, D2, D3, D4, D5, D6, D7
922 value
= 0x00000007 | yuv_lineskip
;
924 ceu_write(pcdev
, CDOCR
, value
);
925 ceu_write(pcdev
, CFWCR
, 0); /* keep "datafetch firewall" disabled */
927 capture_restore(pcdev
, capsr
);
929 /* not in bundle mode: skip CBDSR, CDAYR2, CDACR2, CDBYR2, CDBCR2 */
933 static int sh_mobile_ceu_try_bus_param(struct soc_camera_device
*icd
,
934 unsigned char buswidth
)
936 struct soc_camera_host
*ici
= to_soc_camera_host(icd
->parent
);
937 struct sh_mobile_ceu_dev
*pcdev
= ici
->priv
;
938 struct v4l2_subdev
*sd
= find_bus_subdev(pcdev
, icd
);
939 unsigned long common_flags
= CEU_BUS_FLAGS
;
940 struct v4l2_mbus_config cfg
= {.type
= V4L2_MBUS_PARALLEL
,};
943 ret
= v4l2_subdev_call(sd
, video
, g_mbus_config
, &cfg
);
945 common_flags
= soc_mbus_config_compatible(&cfg
,
947 else if (ret
!= -ENOIOCTLCMD
)
950 if (!common_flags
|| buswidth
> 16)
956 static const struct soc_mbus_pixelfmt sh_mobile_ceu_formats
[] = {
958 .fourcc
= V4L2_PIX_FMT_NV12
,
960 .bits_per_sample
= 8,
961 .packing
= SOC_MBUS_PACKING_1_5X8
,
962 .order
= SOC_MBUS_ORDER_LE
,
964 .fourcc
= V4L2_PIX_FMT_NV21
,
966 .bits_per_sample
= 8,
967 .packing
= SOC_MBUS_PACKING_1_5X8
,
968 .order
= SOC_MBUS_ORDER_LE
,
970 .fourcc
= V4L2_PIX_FMT_NV16
,
972 .bits_per_sample
= 8,
973 .packing
= SOC_MBUS_PACKING_2X8_PADHI
,
974 .order
= SOC_MBUS_ORDER_LE
,
976 .fourcc
= V4L2_PIX_FMT_NV61
,
978 .bits_per_sample
= 8,
979 .packing
= SOC_MBUS_PACKING_2X8_PADHI
,
980 .order
= SOC_MBUS_ORDER_LE
,
984 /* This will be corrected as we get more formats */
985 static bool sh_mobile_ceu_packing_supported(const struct soc_mbus_pixelfmt
*fmt
)
987 return fmt
->packing
== SOC_MBUS_PACKING_NONE
||
988 (fmt
->bits_per_sample
== 8 &&
989 fmt
->packing
== SOC_MBUS_PACKING_1_5X8
) ||
990 (fmt
->bits_per_sample
== 8 &&
991 fmt
->packing
== SOC_MBUS_PACKING_2X8_PADHI
) ||
992 (fmt
->bits_per_sample
> 8 &&
993 fmt
->packing
== SOC_MBUS_PACKING_EXTEND16
);
996 static int client_g_rect(struct v4l2_subdev
*sd
, struct v4l2_rect
*rect
);
998 static struct soc_camera_device
*ctrl_to_icd(struct v4l2_ctrl
*ctrl
)
1000 return container_of(ctrl
->handler
, struct soc_camera_device
,
1004 static int sh_mobile_ceu_s_ctrl(struct v4l2_ctrl
*ctrl
)
1006 struct soc_camera_device
*icd
= ctrl_to_icd(ctrl
);
1007 struct soc_camera_host
*ici
= to_soc_camera_host(icd
->parent
);
1008 struct sh_mobile_ceu_dev
*pcdev
= ici
->priv
;
1011 case V4L2_CID_SHARPNESS
:
1012 switch (icd
->current_fmt
->host_fmt
->fourcc
) {
1013 case V4L2_PIX_FMT_NV12
:
1014 case V4L2_PIX_FMT_NV21
:
1015 case V4L2_PIX_FMT_NV16
:
1016 case V4L2_PIX_FMT_NV61
:
1017 ceu_write(pcdev
, CLFCR
, !ctrl
->val
);
1026 static const struct v4l2_ctrl_ops sh_mobile_ceu_ctrl_ops
= {
1027 .s_ctrl
= sh_mobile_ceu_s_ctrl
,
1030 static int sh_mobile_ceu_get_formats(struct soc_camera_device
*icd
, unsigned int idx
,
1031 struct soc_camera_format_xlate
*xlate
)
1033 struct v4l2_subdev
*sd
= soc_camera_to_subdev(icd
);
1034 struct device
*dev
= icd
->parent
;
1035 struct soc_camera_host
*ici
= to_soc_camera_host(dev
);
1036 struct sh_mobile_ceu_dev
*pcdev
= ici
->priv
;
1039 struct sh_mobile_ceu_cam
*cam
;
1040 enum v4l2_mbus_pixelcode code
;
1041 const struct soc_mbus_pixelfmt
*fmt
;
1043 ret
= v4l2_subdev_call(sd
, video
, enum_mbus_fmt
, idx
, &code
);
1045 /* No more formats */
1048 fmt
= soc_mbus_get_fmtdesc(code
);
1050 dev_warn(dev
, "unsupported format code #%u: %d\n", idx
, code
);
1054 if (!pcdev
->pdata
->csi2
) {
1055 /* Are there any restrictions in the CSI-2 case? */
1056 ret
= sh_mobile_ceu_try_bus_param(icd
, fmt
->bits_per_sample
);
1061 if (!icd
->host_priv
) {
1062 struct v4l2_mbus_framefmt mf
;
1063 struct v4l2_rect rect
;
1066 /* Add our control */
1067 v4l2_ctrl_new_std(&icd
->ctrl_handler
, &sh_mobile_ceu_ctrl_ops
,
1068 V4L2_CID_SHARPNESS
, 0, 1, 1, 0);
1069 if (icd
->ctrl_handler
.error
)
1070 return icd
->ctrl_handler
.error
;
1072 /* FIXME: subwindow is lost between close / open */
1074 /* Cache current client geometry */
1075 ret
= client_g_rect(sd
, &rect
);
1080 ret
= v4l2_subdev_call(sd
, video
, g_mbus_fmt
, &mf
);
1084 while ((mf
.width
> 2560 || mf
.height
> 1920) && shift
< 4) {
1085 /* Try 2560x1920, 1280x960, 640x480, 320x240 */
1086 mf
.width
= 2560 >> shift
;
1087 mf
.height
= 1920 >> shift
;
1088 ret
= v4l2_device_call_until_err(sd
->v4l2_dev
,
1089 soc_camera_grp_id(icd
), video
,
1097 dev_err(dev
, "Failed to configure the client below %ux%x\n",
1098 mf
.width
, mf
.height
);
1102 dev_geo(dev
, "camera fmt %ux%u\n", mf
.width
, mf
.height
);
1104 cam
= kzalloc(sizeof(*cam
), GFP_KERNEL
);
1108 /* We are called with current camera crop, initialise subrect with it */
1110 cam
->subrect
= rect
;
1112 cam
->width
= mf
.width
;
1113 cam
->height
= mf
.height
;
1115 icd
->host_priv
= cam
;
1117 cam
= icd
->host_priv
;
1120 /* Beginning of a pass */
1122 cam
->extra_fmt
= NULL
;
1125 case V4L2_MBUS_FMT_UYVY8_2X8
:
1126 case V4L2_MBUS_FMT_VYUY8_2X8
:
1127 case V4L2_MBUS_FMT_YUYV8_2X8
:
1128 case V4L2_MBUS_FMT_YVYU8_2X8
:
1133 * Our case is simple so far: for any of the above four camera
1134 * formats we add all our four synthesized NV* formats, so,
1135 * just marking the device with a single flag suffices. If
1136 * the format generation rules are more complex, you would have
1137 * to actually hang your already added / counted formats onto
1138 * the host_priv pointer and check whether the format you're
1139 * going to add now is already there.
1141 cam
->extra_fmt
= sh_mobile_ceu_formats
;
1143 n
= ARRAY_SIZE(sh_mobile_ceu_formats
);
1145 for (k
= 0; xlate
&& k
< n
; k
++) {
1146 xlate
->host_fmt
= &sh_mobile_ceu_formats
[k
];
1149 dev_dbg(dev
, "Providing format %s using code %d\n",
1150 sh_mobile_ceu_formats
[k
].name
, code
);
1154 if (!sh_mobile_ceu_packing_supported(fmt
))
1158 /* Generic pass-through */
1161 xlate
->host_fmt
= fmt
;
1164 dev_dbg(dev
, "Providing format %s in pass-through mode\n",
1171 static void sh_mobile_ceu_put_formats(struct soc_camera_device
*icd
)
1173 kfree(icd
->host_priv
);
1174 icd
->host_priv
= NULL
;
1177 /* Check if any dimension of r1 is smaller than respective one of r2 */
1178 static bool is_smaller(struct v4l2_rect
*r1
, struct v4l2_rect
*r2
)
1180 return r1
->width
< r2
->width
|| r1
->height
< r2
->height
;
1183 /* Check if r1 fails to cover r2 */
1184 static bool is_inside(struct v4l2_rect
*r1
, struct v4l2_rect
*r2
)
1186 return r1
->left
> r2
->left
|| r1
->top
> r2
->top
||
1187 r1
->left
+ r1
->width
< r2
->left
+ r2
->width
||
1188 r1
->top
+ r1
->height
< r2
->top
+ r2
->height
;
1191 static unsigned int scale_down(unsigned int size
, unsigned int scale
)
1193 return (size
* 4096 + scale
/ 2) / scale
;
1196 static unsigned int calc_generic_scale(unsigned int input
, unsigned int output
)
1198 return (input
* 4096 + output
/ 2) / output
;
1201 /* Get and store current client crop */
1202 static int client_g_rect(struct v4l2_subdev
*sd
, struct v4l2_rect
*rect
)
1204 struct v4l2_crop crop
;
1205 struct v4l2_cropcap cap
;
1208 crop
.type
= V4L2_BUF_TYPE_VIDEO_CAPTURE
;
1210 ret
= v4l2_subdev_call(sd
, video
, g_crop
, &crop
);
1216 /* Camera driver doesn't support .g_crop(), assume default rectangle */
1217 cap
.type
= V4L2_BUF_TYPE_VIDEO_CAPTURE
;
1219 ret
= v4l2_subdev_call(sd
, video
, cropcap
, &cap
);
1221 *rect
= cap
.defrect
;
1226 /* Client crop has changed, update our sub-rectangle to remain within the area */
1227 static void update_subrect(struct sh_mobile_ceu_cam
*cam
)
1229 struct v4l2_rect
*rect
= &cam
->rect
, *subrect
= &cam
->subrect
;
1231 if (rect
->width
< subrect
->width
)
1232 subrect
->width
= rect
->width
;
1234 if (rect
->height
< subrect
->height
)
1235 subrect
->height
= rect
->height
;
1237 if (rect
->left
> subrect
->left
)
1238 subrect
->left
= rect
->left
;
1239 else if (rect
->left
+ rect
->width
>
1240 subrect
->left
+ subrect
->width
)
1241 subrect
->left
= rect
->left
+ rect
->width
-
1244 if (rect
->top
> subrect
->top
)
1245 subrect
->top
= rect
->top
;
1246 else if (rect
->top
+ rect
->height
>
1247 subrect
->top
+ subrect
->height
)
1248 subrect
->top
= rect
->top
+ rect
->height
-
1253 * The common for both scaling and cropping iterative approach is:
1254 * 1. try if the client can produce exactly what requested by the user
1255 * 2. if (1) failed, try to double the client image until we get one big enough
1256 * 3. if (2) failed, try to request the maximum image
1258 static int client_s_crop(struct soc_camera_device
*icd
, struct v4l2_crop
*crop
,
1259 struct v4l2_crop
*cam_crop
)
1261 struct v4l2_subdev
*sd
= soc_camera_to_subdev(icd
);
1262 struct v4l2_rect
*rect
= &crop
->c
, *cam_rect
= &cam_crop
->c
;
1263 struct device
*dev
= sd
->v4l2_dev
->dev
;
1264 struct sh_mobile_ceu_cam
*cam
= icd
->host_priv
;
1265 struct v4l2_cropcap cap
;
1267 unsigned int width
, height
;
1269 v4l2_subdev_call(sd
, video
, s_crop
, crop
);
1270 ret
= client_g_rect(sd
, cam_rect
);
1275 * Now cam_crop contains the current camera input rectangle, and it must
1276 * be within camera cropcap bounds
1278 if (!memcmp(rect
, cam_rect
, sizeof(*rect
))) {
1279 /* Even if camera S_CROP failed, but camera rectangle matches */
1280 dev_dbg(dev
, "Camera S_CROP successful for %dx%d@%d:%d\n",
1281 rect
->width
, rect
->height
, rect
->left
, rect
->top
);
1282 cam
->rect
= *cam_rect
;
1286 /* Try to fix cropping, that camera hasn't managed to set */
1287 dev_geo(dev
, "Fix camera S_CROP for %dx%d@%d:%d to %dx%d@%d:%d\n",
1288 cam_rect
->width
, cam_rect
->height
,
1289 cam_rect
->left
, cam_rect
->top
,
1290 rect
->width
, rect
->height
, rect
->left
, rect
->top
);
1292 /* We need sensor maximum rectangle */
1293 ret
= v4l2_subdev_call(sd
, video
, cropcap
, &cap
);
1297 /* Put user requested rectangle within sensor bounds */
1298 soc_camera_limit_side(&rect
->left
, &rect
->width
, cap
.bounds
.left
, 2,
1300 soc_camera_limit_side(&rect
->top
, &rect
->height
, cap
.bounds
.top
, 4,
1304 * Popular special case - some cameras can only handle fixed sizes like
1305 * QVGA, VGA,... Take care to avoid infinite loop.
1307 width
= max(cam_rect
->width
, 2);
1308 height
= max(cam_rect
->height
, 2);
1311 * Loop as long as sensor is not covering the requested rectangle and
1312 * is still within its bounds
1314 while (!ret
&& (is_smaller(cam_rect
, rect
) ||
1315 is_inside(cam_rect
, rect
)) &&
1316 (cap
.bounds
.width
> width
|| cap
.bounds
.height
> height
)) {
1321 cam_rect
->width
= width
;
1322 cam_rect
->height
= height
;
1325 * We do not know what capabilities the camera has to set up
1326 * left and top borders. We could try to be smarter in iterating
1327 * them, e.g., if camera current left is to the right of the
1328 * target left, set it to the middle point between the current
1329 * left and minimum left. But that would add too much
1330 * complexity: we would have to iterate each border separately.
1331 * Instead we just drop to the left and top bounds.
1333 if (cam_rect
->left
> rect
->left
)
1334 cam_rect
->left
= cap
.bounds
.left
;
1336 if (cam_rect
->left
+ cam_rect
->width
< rect
->left
+ rect
->width
)
1337 cam_rect
->width
= rect
->left
+ rect
->width
-
1340 if (cam_rect
->top
> rect
->top
)
1341 cam_rect
->top
= cap
.bounds
.top
;
1343 if (cam_rect
->top
+ cam_rect
->height
< rect
->top
+ rect
->height
)
1344 cam_rect
->height
= rect
->top
+ rect
->height
-
1347 v4l2_subdev_call(sd
, video
, s_crop
, cam_crop
);
1348 ret
= client_g_rect(sd
, cam_rect
);
1349 dev_geo(dev
, "Camera S_CROP %d for %dx%d@%d:%d\n", ret
,
1350 cam_rect
->width
, cam_rect
->height
,
1351 cam_rect
->left
, cam_rect
->top
);
1354 /* S_CROP must not modify the rectangle */
1355 if (is_smaller(cam_rect
, rect
) || is_inside(cam_rect
, rect
)) {
1357 * The camera failed to configure a suitable cropping,
1358 * we cannot use the current rectangle, set to max
1360 *cam_rect
= cap
.bounds
;
1361 v4l2_subdev_call(sd
, video
, s_crop
, cam_crop
);
1362 ret
= client_g_rect(sd
, cam_rect
);
1363 dev_geo(dev
, "Camera S_CROP %d for max %dx%d@%d:%d\n", ret
,
1364 cam_rect
->width
, cam_rect
->height
,
1365 cam_rect
->left
, cam_rect
->top
);
1369 cam
->rect
= *cam_rect
;
1370 update_subrect(cam
);
1376 /* Iterative s_mbus_fmt, also updates cached client crop on success */
1377 static int client_s_fmt(struct soc_camera_device
*icd
,
1378 struct v4l2_mbus_framefmt
*mf
, bool ceu_can_scale
)
1380 struct sh_mobile_ceu_cam
*cam
= icd
->host_priv
;
1381 struct v4l2_subdev
*sd
= soc_camera_to_subdev(icd
);
1382 struct device
*dev
= icd
->parent
;
1383 unsigned int width
= mf
->width
, height
= mf
->height
, tmp_w
, tmp_h
;
1384 unsigned int max_width
, max_height
;
1385 struct v4l2_cropcap cap
;
1389 ret
= v4l2_device_call_until_err(sd
->v4l2_dev
,
1390 soc_camera_grp_id(icd
), video
,
1395 dev_geo(dev
, "camera scaled to %ux%u\n", mf
->width
, mf
->height
);
1397 if (width
== mf
->width
&& height
== mf
->height
) {
1398 /* Perfect! The client has done it all. */
1407 cap
.type
= V4L2_BUF_TYPE_VIDEO_CAPTURE
;
1409 ret
= v4l2_subdev_call(sd
, video
, cropcap
, &cap
);
1413 max_width
= min(cap
.bounds
.width
, 2560);
1414 max_height
= min(cap
.bounds
.height
, 1920);
1416 /* Camera set a format, but geometry is not precise, try to improve */
1420 /* width <= max_width && height <= max_height - guaranteed by try_fmt */
1421 while ((width
> tmp_w
|| height
> tmp_h
) &&
1422 tmp_w
< max_width
&& tmp_h
< max_height
) {
1423 tmp_w
= min(2 * tmp_w
, max_width
);
1424 tmp_h
= min(2 * tmp_h
, max_height
);
1427 ret
= v4l2_device_call_until_err(sd
->v4l2_dev
,
1428 soc_camera_grp_id(icd
), video
,
1430 dev_geo(dev
, "Camera scaled to %ux%u\n",
1431 mf
->width
, mf
->height
);
1433 /* This shouldn't happen */
1434 dev_err(dev
, "Client failed to set format: %d\n", ret
);
1441 ret
= client_g_rect(sd
, &cam
->rect
);
1446 cam
->subrect
= cam
->rect
;
1448 update_subrect(cam
);
1454 * @width - on output: user width, mapped back to input
1455 * @height - on output: user height, mapped back to input
1456 * @mf - in- / output camera output window
1458 static int client_scale(struct soc_camera_device
*icd
,
1459 struct v4l2_mbus_framefmt
*mf
,
1460 unsigned int *width
, unsigned int *height
,
1463 struct sh_mobile_ceu_cam
*cam
= icd
->host_priv
;
1464 struct device
*dev
= icd
->parent
;
1465 struct v4l2_mbus_framefmt mf_tmp
= *mf
;
1466 unsigned int scale_h
, scale_v
;
1470 * 5. Apply iterative camera S_FMT for camera user window (also updates
1471 * client crop cache and the imaginary sub-rectangle).
1473 ret
= client_s_fmt(icd
, &mf_tmp
, ceu_can_scale
);
1477 dev_geo(dev
, "5: camera scaled to %ux%u\n",
1478 mf_tmp
.width
, mf_tmp
.height
);
1480 /* 6. Retrieve camera output window (g_fmt) */
1482 /* unneeded - it is already in "mf_tmp" */
1484 /* 7. Calculate new client scales. */
1485 scale_h
= calc_generic_scale(cam
->rect
.width
, mf_tmp
.width
);
1486 scale_v
= calc_generic_scale(cam
->rect
.height
, mf_tmp
.height
);
1488 mf
->width
= mf_tmp
.width
;
1489 mf
->height
= mf_tmp
.height
;
1490 mf
->colorspace
= mf_tmp
.colorspace
;
1493 * 8. Calculate new CEU crop - apply camera scales to previously
1494 * updated "effective" crop.
1496 *width
= scale_down(cam
->subrect
.width
, scale_h
);
1497 *height
= scale_down(cam
->subrect
.height
, scale_v
);
1499 dev_geo(dev
, "8: new client sub-window %ux%u\n", *width
, *height
);
1505 * CEU can scale and crop, but we don't want to waste bandwidth and kill the
1506 * framerate by always requesting the maximum image from the client. See
1507 * Documentation/video4linux/sh_mobile_ceu_camera.txt for a description of
1508 * scaling and cropping algorithms and for the meaning of referenced here steps.
1510 static int sh_mobile_ceu_set_crop(struct soc_camera_device
*icd
,
1511 struct v4l2_crop
*a
)
1513 struct v4l2_rect
*rect
= &a
->c
;
1514 struct device
*dev
= icd
->parent
;
1515 struct soc_camera_host
*ici
= to_soc_camera_host(dev
);
1516 struct sh_mobile_ceu_dev
*pcdev
= ici
->priv
;
1517 struct v4l2_crop cam_crop
;
1518 struct sh_mobile_ceu_cam
*cam
= icd
->host_priv
;
1519 struct v4l2_rect
*cam_rect
= &cam_crop
.c
;
1520 struct v4l2_subdev
*sd
= soc_camera_to_subdev(icd
);
1521 struct v4l2_mbus_framefmt mf
;
1522 unsigned int scale_cam_h
, scale_cam_v
, scale_ceu_h
, scale_ceu_v
,
1523 out_width
, out_height
;
1524 int interm_width
, interm_height
;
1528 dev_geo(dev
, "S_CROP(%ux%u@%u:%u)\n", rect
->width
, rect
->height
,
1529 rect
->left
, rect
->top
);
1531 /* During camera cropping its output window can change too, stop CEU */
1532 capsr
= capture_save_reset(pcdev
);
1533 dev_dbg(dev
, "CAPSR 0x%x, CFLCR 0x%x\n", capsr
, pcdev
->cflcr
);
1536 * 1. - 2. Apply iterative camera S_CROP for new input window, read back
1537 * actual camera rectangle.
1539 ret
= client_s_crop(icd
, a
, &cam_crop
);
1543 dev_geo(dev
, "1-2: camera cropped to %ux%u@%u:%u\n",
1544 cam_rect
->width
, cam_rect
->height
,
1545 cam_rect
->left
, cam_rect
->top
);
1547 /* On success cam_crop contains current camera crop */
1549 /* 3. Retrieve camera output window */
1550 ret
= v4l2_subdev_call(sd
, video
, g_mbus_fmt
, &mf
);
1554 if (mf
.width
> 2560 || mf
.height
> 1920)
1557 /* 4. Calculate camera scales */
1558 scale_cam_h
= calc_generic_scale(cam_rect
->width
, mf
.width
);
1559 scale_cam_v
= calc_generic_scale(cam_rect
->height
, mf
.height
);
1561 /* Calculate intermediate window */
1562 interm_width
= scale_down(rect
->width
, scale_cam_h
);
1563 interm_height
= scale_down(rect
->height
, scale_cam_v
);
1565 if (interm_width
< icd
->user_width
) {
1568 new_scale_h
= calc_generic_scale(rect
->width
, icd
->user_width
);
1570 mf
.width
= scale_down(cam_rect
->width
, new_scale_h
);
1573 if (interm_height
< icd
->user_height
) {
1576 new_scale_v
= calc_generic_scale(rect
->height
, icd
->user_height
);
1578 mf
.height
= scale_down(cam_rect
->height
, new_scale_v
);
1581 if (interm_width
< icd
->user_width
|| interm_height
< icd
->user_height
) {
1582 ret
= v4l2_device_call_until_err(sd
->v4l2_dev
,
1583 soc_camera_grp_id(icd
), video
,
1588 dev_geo(dev
, "New camera output %ux%u\n", mf
.width
, mf
.height
);
1589 scale_cam_h
= calc_generic_scale(cam_rect
->width
, mf
.width
);
1590 scale_cam_v
= calc_generic_scale(cam_rect
->height
, mf
.height
);
1591 interm_width
= scale_down(rect
->width
, scale_cam_h
);
1592 interm_height
= scale_down(rect
->height
, scale_cam_v
);
1595 /* Cache camera output window */
1596 cam
->width
= mf
.width
;
1597 cam
->height
= mf
.height
;
1599 if (pcdev
->image_mode
) {
1600 out_width
= min(interm_width
, icd
->user_width
);
1601 out_height
= min(interm_height
, icd
->user_height
);
1603 out_width
= interm_width
;
1604 out_height
= interm_height
;
1608 * 5. Calculate CEU scales from camera scales from results of (5) and
1611 scale_ceu_h
= calc_scale(interm_width
, &out_width
);
1612 scale_ceu_v
= calc_scale(interm_height
, &out_height
);
1614 dev_geo(dev
, "5: CEU scales %u:%u\n", scale_ceu_h
, scale_ceu_v
);
1616 /* Apply CEU scales. */
1617 cflcr
= scale_ceu_h
| (scale_ceu_v
<< 16);
1618 if (cflcr
!= pcdev
->cflcr
) {
1619 pcdev
->cflcr
= cflcr
;
1620 ceu_write(pcdev
, CFLCR
, cflcr
);
1623 icd
->user_width
= out_width
& ~3;
1624 icd
->user_height
= out_height
& ~3;
1625 /* Offsets are applied at the CEU scaling filter input */
1626 cam
->ceu_left
= scale_down(rect
->left
- cam_rect
->left
, scale_cam_h
) & ~1;
1627 cam
->ceu_top
= scale_down(rect
->top
- cam_rect
->top
, scale_cam_v
) & ~1;
1629 /* 6. Use CEU cropping to crop to the new window. */
1630 sh_mobile_ceu_set_rect(icd
);
1632 cam
->subrect
= *rect
;
1634 dev_geo(dev
, "6: CEU cropped to %ux%u@%u:%u\n",
1635 icd
->user_width
, icd
->user_height
,
1636 cam
->ceu_left
, cam
->ceu_top
);
1638 /* Restore capture. The CE bit can be cleared by the hardware */
1641 capture_restore(pcdev
, capsr
);
1643 /* Even if only camera cropping succeeded */
1647 static int sh_mobile_ceu_get_crop(struct soc_camera_device
*icd
,
1648 struct v4l2_crop
*a
)
1650 struct sh_mobile_ceu_cam
*cam
= icd
->host_priv
;
1652 a
->type
= V4L2_BUF_TYPE_VIDEO_CAPTURE
;
1653 a
->c
= cam
->subrect
;
1659 * Calculate real client output window by applying new scales to the current
1660 * client crop. New scales are calculated from the requested output format and
1661 * CEU crop, mapped backed onto the client input (subrect).
1663 static void calculate_client_output(struct soc_camera_device
*icd
,
1664 const struct v4l2_pix_format
*pix
, struct v4l2_mbus_framefmt
*mf
)
1666 struct sh_mobile_ceu_cam
*cam
= icd
->host_priv
;
1667 struct device
*dev
= icd
->parent
;
1668 struct v4l2_rect
*cam_subrect
= &cam
->subrect
;
1669 unsigned int scale_v
, scale_h
;
1671 if (cam_subrect
->width
== cam
->rect
.width
&&
1672 cam_subrect
->height
== cam
->rect
.height
) {
1673 /* No sub-cropping */
1674 mf
->width
= pix
->width
;
1675 mf
->height
= pix
->height
;
1679 /* 1.-2. Current camera scales and subwin - cached. */
1681 dev_geo(dev
, "2: subwin %ux%u@%u:%u\n",
1682 cam_subrect
->width
, cam_subrect
->height
,
1683 cam_subrect
->left
, cam_subrect
->top
);
1686 * 3. Calculate new combined scales from input sub-window to requested
1691 * TODO: CEU cannot scale images larger than VGA to smaller than SubQCIF
1692 * (128x96) or larger than VGA
1694 scale_h
= calc_generic_scale(cam_subrect
->width
, pix
->width
);
1695 scale_v
= calc_generic_scale(cam_subrect
->height
, pix
->height
);
1697 dev_geo(dev
, "3: scales %u:%u\n", scale_h
, scale_v
);
1700 * 4. Calculate desired client output window by applying combined scales
1701 * to client (real) input window.
1703 mf
->width
= scale_down(cam
->rect
.width
, scale_h
);
1704 mf
->height
= scale_down(cam
->rect
.height
, scale_v
);
1707 /* Similar to set_crop multistage iterative algorithm */
1708 static int sh_mobile_ceu_set_fmt(struct soc_camera_device
*icd
,
1709 struct v4l2_format
*f
)
1711 struct device
*dev
= icd
->parent
;
1712 struct soc_camera_host
*ici
= to_soc_camera_host(dev
);
1713 struct sh_mobile_ceu_dev
*pcdev
= ici
->priv
;
1714 struct sh_mobile_ceu_cam
*cam
= icd
->host_priv
;
1715 struct v4l2_pix_format
*pix
= &f
->fmt
.pix
;
1716 struct v4l2_mbus_framefmt mf
;
1717 __u32 pixfmt
= pix
->pixelformat
;
1718 const struct soc_camera_format_xlate
*xlate
;
1719 /* Keep Compiler Happy */
1720 unsigned int ceu_sub_width
= 0, ceu_sub_height
= 0;
1721 u16 scale_v
, scale_h
;
1724 enum v4l2_field field
;
1726 switch (pix
->field
) {
1728 pix
->field
= V4L2_FIELD_NONE
;
1730 case V4L2_FIELD_INTERLACED_TB
:
1731 case V4L2_FIELD_INTERLACED_BT
:
1732 case V4L2_FIELD_NONE
:
1735 case V4L2_FIELD_INTERLACED
:
1736 field
= V4L2_FIELD_INTERLACED_TB
;
1740 xlate
= soc_camera_xlate_by_fourcc(icd
, pixfmt
);
1742 dev_warn(dev
, "Format %x not found\n", pixfmt
);
1746 /* 1.-4. Calculate desired client output geometry */
1747 calculate_client_output(icd
, pix
, &mf
);
1748 mf
.field
= pix
->field
;
1749 mf
.colorspace
= pix
->colorspace
;
1750 mf
.code
= xlate
->code
;
1753 case V4L2_PIX_FMT_NV12
:
1754 case V4L2_PIX_FMT_NV21
:
1755 case V4L2_PIX_FMT_NV16
:
1756 case V4L2_PIX_FMT_NV61
:
1763 dev_geo(dev
, "S_FMT(pix=0x%x, fld 0x%x, code 0x%x, %ux%u)\n", pixfmt
, mf
.field
, mf
.code
,
1764 pix
->width
, pix
->height
);
1766 dev_geo(dev
, "4: request camera output %ux%u\n", mf
.width
, mf
.height
);
1769 ret
= client_scale(icd
, &mf
, &ceu_sub_width
, &ceu_sub_height
,
1770 image_mode
&& V4L2_FIELD_NONE
== field
);
1772 dev_geo(dev
, "5-9: client scale return %d\n", ret
);
1774 /* Done with the camera. Now see if we can improve the result */
1776 dev_geo(dev
, "fmt %ux%u, requested %ux%u\n",
1777 mf
.width
, mf
.height
, pix
->width
, pix
->height
);
1781 if (mf
.code
!= xlate
->code
)
1784 /* 9. Prepare CEU crop */
1785 cam
->width
= mf
.width
;
1786 cam
->height
= mf
.height
;
1788 /* 10. Use CEU scaling to scale to the requested user window. */
1790 /* We cannot scale up */
1791 if (pix
->width
> ceu_sub_width
)
1792 ceu_sub_width
= pix
->width
;
1794 if (pix
->height
> ceu_sub_height
)
1795 ceu_sub_height
= pix
->height
;
1797 pix
->colorspace
= mf
.colorspace
;
1800 /* Scale pix->{width x height} down to width x height */
1801 scale_h
= calc_scale(ceu_sub_width
, &pix
->width
);
1802 scale_v
= calc_scale(ceu_sub_height
, &pix
->height
);
1804 pix
->width
= ceu_sub_width
;
1805 pix
->height
= ceu_sub_height
;
1810 pcdev
->cflcr
= scale_h
| (scale_v
<< 16);
1813 * We have calculated CFLCR, the actual configuration will be performed
1814 * in sh_mobile_ceu_set_bus_param()
1817 dev_geo(dev
, "10: W: %u : 0x%x = %u, H: %u : 0x%x = %u\n",
1818 ceu_sub_width
, scale_h
, pix
->width
,
1819 ceu_sub_height
, scale_v
, pix
->height
);
1821 cam
->code
= xlate
->code
;
1822 icd
->current_fmt
= xlate
;
1824 pcdev
->field
= field
;
1825 pcdev
->image_mode
= image_mode
;
1827 /* CFSZR requirement */
1834 static int sh_mobile_ceu_try_fmt(struct soc_camera_device
*icd
,
1835 struct v4l2_format
*f
)
1837 const struct soc_camera_format_xlate
*xlate
;
1838 struct v4l2_pix_format
*pix
= &f
->fmt
.pix
;
1839 struct v4l2_subdev
*sd
= soc_camera_to_subdev(icd
);
1840 struct v4l2_mbus_framefmt mf
;
1841 __u32 pixfmt
= pix
->pixelformat
;
1845 dev_geo(icd
->parent
, "TRY_FMT(pix=0x%x, %ux%u)\n",
1846 pixfmt
, pix
->width
, pix
->height
);
1848 xlate
= soc_camera_xlate_by_fourcc(icd
, pixfmt
);
1850 dev_warn(icd
->parent
, "Format %x not found\n", pixfmt
);
1854 /* FIXME: calculate using depth and bus width */
1856 /* CFSZR requires height and width to be 4-pixel aligned */
1857 v4l_bound_align_image(&pix
->width
, 2, 2560, 2,
1858 &pix
->height
, 4, 1920, 2, 0);
1861 height
= pix
->height
;
1863 /* limit to sensor capabilities */
1864 mf
.width
= pix
->width
;
1865 mf
.height
= pix
->height
;
1866 mf
.field
= pix
->field
;
1867 mf
.code
= xlate
->code
;
1868 mf
.colorspace
= pix
->colorspace
;
1870 ret
= v4l2_device_call_until_err(sd
->v4l2_dev
, soc_camera_grp_id(icd
),
1871 video
, try_mbus_fmt
, &mf
);
1875 pix
->width
= mf
.width
;
1876 pix
->height
= mf
.height
;
1877 pix
->field
= mf
.field
;
1878 pix
->colorspace
= mf
.colorspace
;
1881 case V4L2_PIX_FMT_NV12
:
1882 case V4L2_PIX_FMT_NV21
:
1883 case V4L2_PIX_FMT_NV16
:
1884 case V4L2_PIX_FMT_NV61
:
1885 /* FIXME: check against rect_max after converting soc-camera */
1886 /* We can scale precisely, need a bigger image from camera */
1887 if (pix
->width
< width
|| pix
->height
< height
) {
1889 * We presume, the sensor behaves sanely, i.e., if
1890 * requested a bigger rectangle, it will not return a
1895 ret
= v4l2_device_call_until_err(sd
->v4l2_dev
,
1896 soc_camera_grp_id(icd
), video
,
1899 /* Shouldn't actually happen... */
1900 dev_err(icd
->parent
,
1901 "FIXME: client try_fmt() = %d\n", ret
);
1905 /* We will scale exactly */
1906 if (mf
.width
> width
)
1908 if (mf
.height
> height
)
1909 pix
->height
= height
;
1915 dev_geo(icd
->parent
, "%s(): return %d, fmt 0x%x, %ux%u\n",
1916 __func__
, ret
, pix
->pixelformat
, pix
->width
, pix
->height
);
1921 static int sh_mobile_ceu_set_livecrop(struct soc_camera_device
*icd
,
1922 struct v4l2_crop
*a
)
1924 struct v4l2_subdev
*sd
= soc_camera_to_subdev(icd
);
1925 struct soc_camera_host
*ici
= to_soc_camera_host(icd
->parent
);
1926 struct sh_mobile_ceu_dev
*pcdev
= ici
->priv
;
1927 u32 out_width
= icd
->user_width
, out_height
= icd
->user_height
;
1932 /* Wait for frame */
1933 ret
= wait_for_completion_interruptible(&pcdev
->complete
);
1934 /* Stop the client */
1935 ret
= v4l2_subdev_call(sd
, video
, s_stream
, 0);
1937 dev_warn(icd
->parent
,
1938 "Client failed to stop the stream: %d\n", ret
);
1940 /* Do the crop, if it fails, there's nothing more we can do */
1941 sh_mobile_ceu_set_crop(icd
, a
);
1943 dev_geo(icd
->parent
, "Output after crop: %ux%u\n", icd
->user_width
, icd
->user_height
);
1945 if (icd
->user_width
!= out_width
|| icd
->user_height
!= out_height
) {
1946 struct v4l2_format f
= {
1947 .type
= V4L2_BUF_TYPE_VIDEO_CAPTURE
,
1950 .height
= out_height
,
1951 .pixelformat
= icd
->current_fmt
->host_fmt
->fourcc
,
1952 .field
= pcdev
->field
,
1953 .colorspace
= icd
->colorspace
,
1956 ret
= sh_mobile_ceu_set_fmt(icd
, &f
);
1957 if (!ret
&& (out_width
!= f
.fmt
.pix
.width
||
1958 out_height
!= f
.fmt
.pix
.height
))
1961 icd
->user_width
= out_width
& ~3;
1962 icd
->user_height
= out_height
& ~3;
1963 ret
= sh_mobile_ceu_set_bus_param(icd
);
1967 /* Thaw the queue */
1969 spin_lock_irq(&pcdev
->lock
);
1970 sh_mobile_ceu_capture(pcdev
);
1971 spin_unlock_irq(&pcdev
->lock
);
1972 /* Start the client */
1973 ret
= v4l2_subdev_call(sd
, video
, s_stream
, 1);
1977 static unsigned int sh_mobile_ceu_poll(struct file
*file
, poll_table
*pt
)
1979 struct soc_camera_device
*icd
= file
->private_data
;
1981 return vb2_poll(&icd
->vb2_vidq
, file
, pt
);
1984 static int sh_mobile_ceu_querycap(struct soc_camera_host
*ici
,
1985 struct v4l2_capability
*cap
)
1987 strlcpy(cap
->card
, "SuperH_Mobile_CEU", sizeof(cap
->card
));
1988 cap
->capabilities
= V4L2_CAP_VIDEO_CAPTURE
| V4L2_CAP_STREAMING
;
1992 static int sh_mobile_ceu_init_videobuf(struct vb2_queue
*q
,
1993 struct soc_camera_device
*icd
)
1995 q
->type
= V4L2_BUF_TYPE_VIDEO_CAPTURE
;
1996 q
->io_modes
= VB2_MMAP
| VB2_USERPTR
;
1998 q
->ops
= &sh_mobile_ceu_videobuf_ops
;
1999 q
->mem_ops
= &vb2_dma_contig_memops
;
2000 q
->buf_struct_size
= sizeof(struct sh_mobile_ceu_buffer
);
2002 return vb2_queue_init(q
);
2005 static struct soc_camera_host_ops sh_mobile_ceu_host_ops
= {
2006 .owner
= THIS_MODULE
,
2007 .add
= sh_mobile_ceu_add_device
,
2008 .remove
= sh_mobile_ceu_remove_device
,
2009 .get_formats
= sh_mobile_ceu_get_formats
,
2010 .put_formats
= sh_mobile_ceu_put_formats
,
2011 .get_crop
= sh_mobile_ceu_get_crop
,
2012 .set_crop
= sh_mobile_ceu_set_crop
,
2013 .set_livecrop
= sh_mobile_ceu_set_livecrop
,
2014 .set_fmt
= sh_mobile_ceu_set_fmt
,
2015 .try_fmt
= sh_mobile_ceu_try_fmt
,
2016 .poll
= sh_mobile_ceu_poll
,
2017 .querycap
= sh_mobile_ceu_querycap
,
2018 .set_bus_param
= sh_mobile_ceu_set_bus_param
,
2019 .init_videobuf2
= sh_mobile_ceu_init_videobuf
,
2023 struct notifier_block notifier
;
2024 struct completion completion
;
2028 static int bus_notify(struct notifier_block
*nb
,
2029 unsigned long action
, void *data
)
2031 struct device
*dev
= data
;
2032 struct bus_wait
*wait
= container_of(nb
, struct bus_wait
, notifier
);
2034 if (wait
->dev
!= dev
)
2038 case BUS_NOTIFY_UNBOUND_DRIVER
:
2039 /* Protect from module unloading */
2040 wait_for_completion(&wait
->completion
);
2046 static int __devinit
sh_mobile_ceu_probe(struct platform_device
*pdev
)
2048 struct sh_mobile_ceu_dev
*pcdev
;
2049 struct resource
*res
;
2053 struct bus_wait wait
= {
2054 .completion
= COMPLETION_INITIALIZER_ONSTACK(wait
.completion
),
2055 .notifier
.notifier_call
= bus_notify
,
2057 struct sh_mobile_ceu_companion
*csi2
;
2059 res
= platform_get_resource(pdev
, IORESOURCE_MEM
, 0);
2060 irq
= platform_get_irq(pdev
, 0);
2061 if (!res
|| (int)irq
<= 0) {
2062 dev_err(&pdev
->dev
, "Not enough CEU platform resources.\n");
2067 pcdev
= kzalloc(sizeof(*pcdev
), GFP_KERNEL
);
2069 dev_err(&pdev
->dev
, "Could not allocate pcdev\n");
2074 INIT_LIST_HEAD(&pcdev
->capture
);
2075 spin_lock_init(&pcdev
->lock
);
2076 init_completion(&pcdev
->complete
);
2078 pcdev
->pdata
= pdev
->dev
.platform_data
;
2079 if (!pcdev
->pdata
) {
2081 dev_err(&pdev
->dev
, "CEU platform data not set.\n");
2085 base
= ioremap_nocache(res
->start
, resource_size(res
));
2088 dev_err(&pdev
->dev
, "Unable to ioremap CEU registers.\n");
2094 pcdev
->video_limit
= 0; /* only enabled if second resource exists */
2096 res
= platform_get_resource(pdev
, IORESOURCE_MEM
, 1);
2098 err
= dma_declare_coherent_memory(&pdev
->dev
, res
->start
,
2102 DMA_MEMORY_EXCLUSIVE
);
2104 dev_err(&pdev
->dev
, "Unable to declare CEU memory.\n");
2109 pcdev
->video_limit
= resource_size(res
);
2113 err
= request_irq(pcdev
->irq
, sh_mobile_ceu_irq
, IRQF_DISABLED
,
2114 dev_name(&pdev
->dev
), pcdev
);
2116 dev_err(&pdev
->dev
, "Unable to register CEU interrupt.\n");
2117 goto exit_release_mem
;
2120 pm_suspend_ignore_children(&pdev
->dev
, true);
2121 pm_runtime_enable(&pdev
->dev
);
2122 pm_runtime_resume(&pdev
->dev
);
2124 pcdev
->ici
.priv
= pcdev
;
2125 pcdev
->ici
.v4l2_dev
.dev
= &pdev
->dev
;
2126 pcdev
->ici
.nr
= pdev
->id
;
2127 pcdev
->ici
.drv_name
= dev_name(&pdev
->dev
);
2128 pcdev
->ici
.ops
= &sh_mobile_ceu_host_ops
;
2130 pcdev
->alloc_ctx
= vb2_dma_contig_init_ctx(&pdev
->dev
);
2131 if (IS_ERR(pcdev
->alloc_ctx
)) {
2132 err
= PTR_ERR(pcdev
->alloc_ctx
);
2136 err
= soc_camera_host_register(&pcdev
->ici
);
2140 /* CSI2 interfacing */
2141 csi2
= pcdev
->pdata
->csi2
;
2143 struct platform_device
*csi2_pdev
=
2144 platform_device_alloc("sh-mobile-csi2", csi2
->id
);
2145 struct sh_csi2_pdata
*csi2_pdata
= csi2
->platform_data
;
2149 goto exit_host_unregister
;
2152 pcdev
->csi2_pdev
= csi2_pdev
;
2154 err
= platform_device_add_data(csi2_pdev
, csi2_pdata
, sizeof(*csi2_pdata
));
2158 csi2_pdata
= csi2_pdev
->dev
.platform_data
;
2159 csi2_pdata
->v4l2_dev
= &pcdev
->ici
.v4l2_dev
;
2161 csi2_pdev
->resource
= csi2
->resource
;
2162 csi2_pdev
->num_resources
= csi2
->num_resources
;
2164 err
= platform_device_add(csi2_pdev
);
2168 wait
.dev
= &csi2_pdev
->dev
;
2170 err
= bus_register_notifier(&platform_bus_type
, &wait
.notifier
);
2172 goto exit_pdev_unregister
;
2175 * From this point the driver module will not unload, until
2176 * we complete the completion.
2179 if (!csi2_pdev
->dev
.driver
) {
2180 complete(&wait
.completion
);
2181 /* Either too late, or probing failed */
2182 bus_unregister_notifier(&platform_bus_type
, &wait
.notifier
);
2184 goto exit_pdev_unregister
;
2188 * The module is still loaded, in the worst case it is hanging
2189 * in device release on our completion. So, _now_ dereferencing
2190 * the "owner" is safe!
2193 err
= try_module_get(csi2_pdev
->dev
.driver
->owner
);
2195 /* Let notifier complete, if it has been locked */
2196 complete(&wait
.completion
);
2197 bus_unregister_notifier(&platform_bus_type
, &wait
.notifier
);
2200 goto exit_pdev_unregister
;
2206 exit_pdev_unregister
:
2207 platform_device_del(pcdev
->csi2_pdev
);
2209 pcdev
->csi2_pdev
->resource
= NULL
;
2210 platform_device_put(pcdev
->csi2_pdev
);
2211 exit_host_unregister
:
2212 soc_camera_host_unregister(&pcdev
->ici
);
2214 vb2_dma_contig_cleanup_ctx(pcdev
->alloc_ctx
);
2216 pm_runtime_disable(&pdev
->dev
);
2217 free_irq(pcdev
->irq
, pcdev
);
2219 if (platform_get_resource(pdev
, IORESOURCE_MEM
, 1))
2220 dma_release_declared_memory(&pdev
->dev
);
2229 static int __devexit
sh_mobile_ceu_remove(struct platform_device
*pdev
)
2231 struct soc_camera_host
*soc_host
= to_soc_camera_host(&pdev
->dev
);
2232 struct sh_mobile_ceu_dev
*pcdev
= container_of(soc_host
,
2233 struct sh_mobile_ceu_dev
, ici
);
2234 struct platform_device
*csi2_pdev
= pcdev
->csi2_pdev
;
2236 soc_camera_host_unregister(soc_host
);
2237 pm_runtime_disable(&pdev
->dev
);
2238 free_irq(pcdev
->irq
, pcdev
);
2239 if (platform_get_resource(pdev
, IORESOURCE_MEM
, 1))
2240 dma_release_declared_memory(&pdev
->dev
);
2241 iounmap(pcdev
->base
);
2242 vb2_dma_contig_cleanup_ctx(pcdev
->alloc_ctx
);
2243 if (csi2_pdev
&& csi2_pdev
->dev
.driver
) {
2244 struct module
*csi2_drv
= csi2_pdev
->dev
.driver
->owner
;
2245 platform_device_del(csi2_pdev
);
2246 csi2_pdev
->resource
= NULL
;
2247 platform_device_put(csi2_pdev
);
2248 module_put(csi2_drv
);
2255 static int sh_mobile_ceu_runtime_nop(struct device
*dev
)
2257 /* Runtime PM callback shared between ->runtime_suspend()
2258 * and ->runtime_resume(). Simply returns success.
2260 * This driver re-initializes all registers after
2261 * pm_runtime_get_sync() anyway so there is no need
2262 * to save and restore registers here.
2267 static const struct dev_pm_ops sh_mobile_ceu_dev_pm_ops
= {
2268 .runtime_suspend
= sh_mobile_ceu_runtime_nop
,
2269 .runtime_resume
= sh_mobile_ceu_runtime_nop
,
2272 static struct platform_driver sh_mobile_ceu_driver
= {
2274 .name
= "sh_mobile_ceu",
2275 .pm
= &sh_mobile_ceu_dev_pm_ops
,
2277 .probe
= sh_mobile_ceu_probe
,
2278 .remove
= __devexit_p(sh_mobile_ceu_remove
),
2281 static int __init
sh_mobile_ceu_init(void)
2283 /* Whatever return code */
2284 request_module("sh_mobile_csi2");
2285 return platform_driver_register(&sh_mobile_ceu_driver
);
2288 static void __exit
sh_mobile_ceu_exit(void)
2290 platform_driver_unregister(&sh_mobile_ceu_driver
);
2293 module_init(sh_mobile_ceu_init
);
2294 module_exit(sh_mobile_ceu_exit
);
2296 MODULE_DESCRIPTION("SuperH Mobile CEU driver");
2297 MODULE_AUTHOR("Magnus Damm");
2298 MODULE_LICENSE("GPL");
2299 MODULE_VERSION("0.0.6");
2300 MODULE_ALIAS("platform:sh_mobile_ceu");